References

References

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Albert-László Barabási. Linked: the new science of networks. Perseus, 2003. ISBN 978-0-738-20667-7.

2

Albert-László Barabási. Bursts: the hidden patterns behind everything you do, from your e-mail to the Bloody Crusades. Plume, 2011. ISBN 978-0-452-29718-0.

3

Ying Cao, Daniel Gillespie, and Linda Petzold. Efficient step size selection for the tau-leaping simulation method. Journal of Chemical Physics, 2006. URL: doi://10.1063/1.2159468.

4

Simon Dobson. Epidemic modelling: Some notes, maths, and code. Independent Publishing Network, 2020. ISBN 978-183853-565-0. URL: https://simoninireland.github.io/introduction-to-epidemics/.

5

Daniel Gillespie. A general method for numerically simulating the stochastic time evolution of coupled chemical reactions. Journal of Computational Physics, 22:403––434, 1976.

6

Daniel Gillespie. Exact stochastic simulation of coupled chemical reactions. Journal of Physical Chemistry, 81(25):2340––2361, 1977.

7

M.E.J. Newman. Spread of epidemic disease on networks. Physical Review E, July 2002. URL: doi://10.1103/PhysRevE.66.016128.

8

M.E.J. Newman. Networks: an introduction. Oxford University Press, 2010. ISBN 978-0-19-920665-0.

9

M.E.J. Newman, Steven Strogatz, and Duncan Watts. Random graphs with arbitrary degree distributions and their applications. Physical Review E, 2001. URL: https://doi.org/10.1103/PhysRevE.64.026118.

10

Mark Newman, Albert László Barabási, and Duncan Watts. The structure and dynamics of networks. Princeton University Press, 2006.